Title: SANKEN AC INVERTER
1SANKEN AC INVERTER
- High Performance Quiet Inverter
2SANKEN AC INVERTER
- High Performance Quiet Inverter
Samco-e
Samco-vm05
Samco-i
3SANKEN AC INVERTER
- High Performance Quiet Inverter
Samco-e
Samco-vm05
Samco-i
4Cd 071 Motor Control Mode
5Cd 071 Motor Control Mode
6Cd 071 Motor Control Mode
- V/f mode
- Sensorless vector control mode
7Cd 071 Motor Control Mode
- V/f mode
- Sensorless vector control mode
- PID control mode
8Cd 071 Motor Control Mode
- V/f mode
- Sensorless vector control mode
- PID control mode
- Feedback control mode
- Control mode with speed sensor
9Cd 071 Motor Control Mode
- V/f mode
- Sensorless vector control mode
- PID control mode
- Feedback control mode
- Control mode with speed sensor
- Simple energy-saving control mode
- Auto energy-saving control mode 1
- Auto energy-saving control mode 2
10Cd 071 Motor Control Mode
- V/f mode
- Sensorless vector control mode
- PID control mode
- Feedback control mode
- Control mode with speed sensor
- Simple energy-saving control mode
- Auto energy-saving control mode 1
- Auto energy-saving control mode 2
- Auto tuning mode 1
- Auto tuning mode 2
11Cd 071 Motor Control Mode
- V/f mode
- Sensorless vector control mode
- PID control mode
- Feedback control mode
- Control mode with speed sensor
- Simple energy-saving control mode
- Auto energy-saving control mode 1
- Auto energy-saving control mode 2
- Auto tuning mode 1
- Auto tuning mode 2
12Cd 071 Motor Control Mode
- V/f mode
- Sensorless vector control mode
- PID control mode
- Feedback control mode
- Control mode with speed sensor
- Simple energy-saving control mode
- Auto energy-saving control mode 1
- Auto energy-saving control mode 2
- Auto tuning mode 1
- Auto tuning mode 2
13V/f mode
14V/f mode
- Controls the motor with a specified V/f pattern.
15V/f mode
- Controls the motor with a specified V/f pattern.
Output Voltage
Base Voltage
Output Frequency
Base Frequency
Upper Frequency
16Sensorless Vector Control
17Sensorless Vector Control
18Sensorless Vector Control
- Constant Speed Control
- Constant Power Operation
19Sensorless Vector Control
- Constant Speed Control
- Constant Power Operation
- Irrespective of Load
20Sensorless Vector Control
- Constant Speed Control
- Constant Power Operation
- Irrespective of Load
- High Torque in Low Frequency
21Sensorless Vector Control
- Constant Speed Control
- Constant Power Operation
- Irrespective of Load
- High Torque in Low Frequency
- Depends on Motor Constant (Auto Tuning)
22Sensorless Vector Control
- Constant Speed Control
- Constant Power Operation
- Irrespective of Load
- High Torque in Low Frequency
- Depends on Motor Constant (Auto Tuning)
- One Motor for One Inverter
23Sensorless Vector Control
- Constant Speed Control
- Constant Power Operation
- Irrespective of Load
- High Torque in Low Frequency
- Depends on Motor Constant (Auto Tuning)
- One Motor for One Inverter
- Motor 4-pole / 6-pole, 3-phase
24Sensorless Vector Control
- Constant Speed Control
- Constant Power Operation
- Irrespective of Load
- High Torque in Low Frequency
- Depends on Motor Constant (Auto Tuning)
- One Motor for One Inverter
- Motor 4-pole / 6-pole, 3-phase
- Equal Motor Capacity / One Rank Lower
25PID Control
26PID Control
27PID Control
- Valid in V/f mode
- Analog Signal
- 4 mA 20 mA
- 0 V 5 V
- 0 V 10 V
28PID Control
- Valid in V/f mode
- Analog Signal
- 4 mA 20 mA
- 0 V 5 V
- 0 V 10 V
- Uses Analog feedback signal
- Closed Loop
- Steady Operation
29PID Control
Frequency
Time
30PID Control
Frequency
Time
31Energy Saving Mode
32Energy Saving Mode
- Simple energy-saving mode
- Auto energy-saving mode 1
- Auto energy-saving mode 2
33Simple Energy Saving
- Run in V/f mode
- Reduce only the output voltage
- May cause a drop in speed of rotation
- Suitable for reduced torque
34Simple Energy Saving
Voltage and Frequency
Frequency
Time
35Simple Energy Saving
Voltage and Frequency
Frequency
Voltage
Time
36Simple Energy Saving
Voltage and Frequency
Frequency
Voltage
Time
37Auto Energy Saving 1
- Run in V/f mode
- Reduce only the output voltage
- Supplying the most efficient voltage
- May cause a drop in speed of rotation, but can be
compensated by combination with PID control - Suitable for reduced torque
38Auto Energy Saving 1
Voltage and Frequency
Frequency
Voltage
Time
39Simple Energy Saving
Voltage and Frequency
Frequency
Voltage
Time
40Auto Energy Saving 1
Voltage and Frequency
Frequency
Voltage
Time
41Simple Energy Saving
Voltage and Frequency
Frequency
Voltage
Time
42Auto Energy Saving 1
Voltage and Frequency
Frequency
Voltage
Time
43Auto Energy Saving 2
- Similar to Auto Energy Saving Mode 1
- Run in Sensorless control mode
- Increase motor efficiency
- Energy-saving at changing load
- Stable speed of rotation
- Suitable for arbitrary load torque
44Summary
- Manual Control
- V/f mode
- Automatic Control
- Sensorless Vector Control
- Internal PID Control
- 4 mA 20 mA, 0 V 5 V, 0 V 10 V
- Saving Energy
- Manual V/f mode (Simple Energy Saving)
- Auto, V/f, Reduced Torque (Auto Energy Saving 1)
- Auto, Sensorless, Arbitrary Load Torque (Auto
Energy Saving 2) - Auto Tuning
- Without Rotating The Motor (Auto Tuning 1)
- Rotating The Motor (Auto Tuning 2)
45SANKEN